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Habitat management on multiple spatial scales can enhance bee pollination and crop yield in tropical homegardens

  • Iris Motzke*
  • , Alexandra Maria Klein
  • , Shahabuddin Saleh
  • , Teja Tscharntke
  • , Thomas Cherico Wanger
  • *Corresponding author for this work

    Research output: Journal contributionsJournal articlesResearchpeer-review

    46 Citations (Scopus)

    Abstract

    Pollinator populations respond to environmental changes operating on different spatial scales, but the contribution of scale-dependent habitat management to crop pollination and yield-gap reduction is little understood. Here, we analyze how bee abundance and their effects on cucumber production in tropical homegardens is driven by factors measured on three spatial scales; the (1) homegarden scale (flower cover of the focal homegarden); the (2) adjacent-habitat scale (amount of homegarden habitat within a 200 m radius around the focal homegarden); and the (3) landscape scale (distance of the focal homegarden to the nearest forest from 0 to 2200 m). We also evaluate bee responses according to functional traits such as body size. We found that bees were affected by factors on multiple spatial scales. On the homegarden scale, the percentage flower cover best predicted pollinator attraction, if, on the adjacent-habitat scale the percentage of surrounding homegardens was at least 20%. On the landscape scale, bee abundance, mainly of small species, increased when homegardens were closer to the forest.Increasing abundance of flower-visiting bees increased cucumber yield, with solitary bees being the most abundant flower visitors. We predicted that a 50% loss in bee abundance would translate into a 47% yield and associated income decline. Homegardens with a flower cover of 50%, being surrounded by a homegarden area of 50% and being established 1500 m).Our work suggests that farmers need to be aware of management practices not only at the local and landscape scale but also on the adjacent-habitat scale. Only then farmers can increase wild bee populations to reduce crop yield gaps through pollination services.

    Original languageEnglish
    JournalAgriculture, Ecosystems and Environment
    Volume223
    Pages (from-to)144-151
    Number of pages8
    ISSN0167-8809
    DOIs
    Publication statusPublished - 01.05.2016

    UN SDGs

    This output contributes to the following UN Sustainable Development Goals (SDGs)

    1. SDG 2 - Zero Hunger
      SDG 2 Zero Hunger

    Research areas and keywords

    • Body size
    • Cucumis sativus
    • Flower cover
    • Food security
    • Indonesia
    • Net income
    • Pollinators
    • Ecosystems Research

    ASJC Scopus Subject Areas

    • Animal Science and Zoology
    • Ecology
    • Agronomy and Crop Science

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